240 Publications (Page 5 of 10)
2007
Structural analysis of inhibition of E. coli methionine aminopeptidase: implication of loop adaptability in selective inhibition of bacterial enzymesMa, Ze-Qiang⋅Ma, Ze-Qiang⋅Xie, Sheng-Xue⋅Xie, Sheng-Xue⋅Huang, Qing-Qing⋅Huang, Qing-Qing⋅Nan, Fa-Jun⋅Nan, Fa-Jun⋅Hurley, Thomas D⋅Hurley, Thomas D⋅Ye, Qi-Zhuang and Ye, Qi ZhuangBMC structural biology, vol. 7, (no. 1), pp. 84, 2007-Dec-19.
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Structural analysis of inhibition of E. coli methionine aminopeptidase: implication of loop adaptability in selective inhibition of bacterial enzymes.ZQ, Ma⋅SX, Xie⋅QQ, Huang⋅FJ, Nan⋅TD, Hurley and QZ, Ye
Structural analysis of inhibition of E. coli methionine aminopeptidase: implication of loop adaptability in selective inhibition of bacterial enzymes.Ma, Ze-Qiang⋅ZQ, Ma⋅Xie, Sheng-Xue⋅SX, Xie⋅Huang, Qing-Qing⋅QQ, Huang⋅Nan, Fa-Jun⋅FJ, Nan⋅Hurley, Thomas D⋅TD, Hurley⋅Ye, Qi Zhuang and QZ, YeBMC structural biology.
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Structural and functional consequences of coenzyme binding to the inactive asian variant of mitochondrial aldehyde dehydrogenase: roles of residues 475 and 487.Larson, Heather N⋅Larson, Heather N⋅Zhou, Jianzhong⋅Zhou, Jianzhong⋅Chen, Zhiqiang⋅Chen, Zhiqiang⋅Stamler, Jonathan S⋅Stamler, Jonathan S⋅Weiner, Henry⋅Weiner, Henry⋅Hurley, Thomas D and Hurley, Thomas DThe Journal of biological chemistry, vol. 282, (no. 17), pp. 12940-50, 2007/Apr/27.
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Structural and functional consequences of coenzyme binding to the inactive asian variant of mitochondrial aldehyde dehydrogenase: roles of residues 475 and 487.HN, Larson⋅J, Zhou⋅Z, Chen⋅JS, Stamler⋅H, Weiner and TD, Hurley
Structural basis for regulation of protein phosphatase 1 by inhibitor-2.Hurley, Thomas D⋅Yang, Jie⋅Zhang, Lili⋅Goodwin, Kristie D⋅Zou, Qin⋅Cortese, Marc⋅Dunker, A K and Depaoli Roach, Anna AThe Journal of biological chemistry, vol. 282, (no. 39), pp. 28874-83, 2007/Sep/28.
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Structural basis for regulation of protein phosphatase 1 by inhibitor-2.TD, Hurley⋅J, Yang⋅L, Zhang⋅KD, Goodwin⋅Q, Zou⋅M, Cortese⋅AK, Dunker and AA, DePaoli-Roach
Ternary complex formation and induced asymmetry in orotate phosphoribosyltransferase.L, González-Segura⋅JF, Witte⋅RW, McClard and TD, Hurley
Ternary Complex Formation and Induced Asymmetry in Orotate PhosphoribosyltransferaseGonzalez-Segura, Lilian⋅Witte, John F⋅McClard, Ronald W and Hurley, Thomas DBiochemistry (Washington), vol. 46, (no. 49), pp. 14075-14086, 2007.
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2006
Absolute Quantification of ADH Isoenzymes in Human Liver using Multiple Reaction Monitoring (MRM) MethodJanecki, Dariusz J⋅Tegeler, Tony⋅Bemis, Kerry⋅Hurley, Thomas D⋅Bosron, William F and Wang, Mu54th ASMS Conference Proceedings, 2006.
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Direct detection of glycogenin reaction products during glycogen initiation.Hurley, Thomas D⋅Hurley, Thomas D⋅Walls, Chad⋅Walls, Chad⋅Bennett, John R⋅Bennett, John R⋅Roach, Peter J⋅Roach, Peter J⋅Wang, Mu and Wang, MuBiochemical and biophysical research communications, vol. 348, (no. 2), pp. 374-8, 2006/Sep/22.
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Direct detection of glycogenin reaction products during glycogen initiation.TD, Hurley⋅C, Walls⋅JR, Bennett⋅PJ, Roach and M, Wang
Inhibition of human mitochondrial aldehyde dehydrogenase by 4-hydroxynon-2-enal and 4-oxonon-2-enal.JA, Doorn⋅TD, Hurley and DR, Petersen
Inhibition of the oxidative metabolism of 3,4-dihydroxyphenylacetaldehyde, a reactive intermediate of dopamine metabolism, by 4-hydroxy-2-nonenal.
VR, Florang⋅JN, Rees⋅NK, Brogden⋅DG, Anderson⋅TD, Hurley and JA, Doorn
Neurotoxicology. | Journal Article
Inhibition of the oxidative metabolism of 3,4-dihydroxyphenylacetaldehyde, a reactive intermediate of dopamine metabolism, by 4-hydroxy-2-nonenal.VR, Florang⋅JN, Rees⋅NK, Brogden⋅DG, Anderson⋅TD, Hurley and JA, Doorn
Selective alteration of the rate-limiting step in cytosolic aldehyde dehydrogenase through random mutagenesis.KK, Ho⋅TD, Hurley and H, Weiner
Selective alteration of the rate-limiting step in cytosolic aldehyde dehydrogenase through random mutagenesis.Ho, Kwok K⋅Hurley, Thomas D and Weiner, HenryBiochemistry, vol. 45, (no. 31), pp. 9445-53, 2006/Aug/8.
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2005
Differential effects of Mg2+ ions on the individual kinetic steps of human cytosolic and mitochondrial aldehyde dehydrogenases.Ho, Kwok K⋅Ho, Kwok⋅Ho, Kwok⋅Allai-Hassani, Abdellah⋅Allali-Hassani, Abdellah⋅Allai-Hassani, Abdellah⋅Hurley, Thomas⋅Hurley, Thomas⋅Hurley, Thomas D⋅Weiner, Henry⋅Weiner, Henry and Weiner, HenryBiochemistry, vol. 44, (no. 22), pp. 8022-9, 2005/Jun/7.
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Differential effects of Mg2+ ions on the individual kinetic steps of human cytosolic and mitochondrial aldehyde dehydrogenases.KK, Ho⋅A, Allali-Hassani⋅TD, Hurley and H, Weiner
Differential effects of Mg ions on the individual kinetic steps of human cytosolic and mitochondrial aldehyde dehydrogenasesHo, Kwok⋅Allai-Hassani, Abdellah⋅Hurley, Thomas and Weiner, HenryBiochemistry, vol. 44, (no. 22), pp. 8022, 20050607.
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Disruption of the coenzyme binding site and dimer interface revealed in the crystal structure of mitochondrial aldehyde dehydrogenase "Asian" variant.HN, Larson⋅H, Weiner and TD, Hurley
Disruption of the Coenzyme Binding Site and Dimer Interface Revealed in the Crystal Structure of Mitochondrial Aldehyde Dehydrogenase "Asian" Variant.Larson, Heather N⋅Larson, Heather N⋅Weiner, Henry⋅Weiner, Henry⋅Hurley, Thomas D and Hurley, Thomas DJournal of biological chemistry., vol. 280, (no. 34), pp. 30550-30556, 2005.
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Hydrolysis of capecitabine to 5’-deoxy-5-fluorocytidine by human carboxylesterases and inhibition by loperamide.Quinney, S K⋅SK, Quinney⋅Quinney, Sk⋅Sanghani, Sonal P⋅SP, Sanghani⋅Sanghani, SP⋅Davis, WI⋅Davis, W I⋅WI, Davis⋅TD, Hurley⋅Hurley, T D⋅Hurley, TD⋅Sun, Z⋅Z, Sun⋅Sun, Z⋅DJ, Murry⋅Murry, Daryl J⋅Murry, DJ⋅Bosron, WF⋅Bosron, William F and WF, BosronThe Journal of pharmacology and experimental therapeutics.
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Hydrolysis of capecitabine to 5’-deoxy-5-fluorocytidine by human carboxylesterases and inhibition by loperamide.SK, Quinney⋅SP, Sanghani⋅WI, Davis⋅TD, Hurley⋅Z, Sun⋅DJ, Murry and WF, Bosron